AbrB is a global gene regulator involved in transition phase phenomena in Bacillus subtilis. It participates in a complex regulatory network governing the expression of stationary-phase functions. AbrB was previously found to be phosphorylated on serine 86 located close to its C-terminal oligomerization domain. Here we report that AbrB can be phosphorylated by three B. subtilis serine/threonine kinases expressed during the transition and stationary phase: PrkC, PrkD and YabT. Our in vitro findings suggest that AbrB phosphorylation impedes its DNA binding and abolishes binding cooperativity. In vivo we established that a phospho-mimetic mutation abrB S86D leads to a significant loss of AbrB control over several key target functions: exoprote...
SummaryUnderstanding the DNA recognition and binding by the AbrB-like family of transcriptional regu...
\ua9 2016, Croatian Society of Natural Sciences. All rights reserved.Background and purpose: Single-...
<p>Bacillus subtilis cells can adopt different life-styles in response to various environmental cues...
AbrB is a global gene regulator involved in transition phase phenomena in Bacillus subtilis. It part...
The AbrB protein of the spore-forming bacterium Bacillus subtilis is a repressor of numerous genes t...
The transition state regulator AbrB functions as an activator, a repressor, and a preventer of gene ...
The Bacillus subtilis AbrB protein is a DNA-binding global regulator of a plethora of functions that...
AbstractThe AbrB protein of B. subtilis represses the transcription of various postexponentially exp...
SummaryThe AbrB protein from Bacillus subtilis is a DNA-binding global regulator controlling the ons...
Genetic competence is a differentiation process initiated by Bacillus subtilis as a result of nutrit...
Bacillus subtilis is the model organism for low GC Gram-positive bacteria and is of great biotechnol...
<div><p>The global transition state regulator AbrB controls more than 100 genes of the <i>Bacillus</...
Bacillus subtilis is a ubiquitous soil bacterium that forms biofilms in a process that is negatively...
The lutR gene, encoding a product resembling a GntR-family transcriptional regulator, has previously...
Bacillus subtilis is the model organism for low GC Gram-positive bacteria and is of great biotechnol...
SummaryUnderstanding the DNA recognition and binding by the AbrB-like family of transcriptional regu...
\ua9 2016, Croatian Society of Natural Sciences. All rights reserved.Background and purpose: Single-...
<p>Bacillus subtilis cells can adopt different life-styles in response to various environmental cues...
AbrB is a global gene regulator involved in transition phase phenomena in Bacillus subtilis. It part...
The AbrB protein of the spore-forming bacterium Bacillus subtilis is a repressor of numerous genes t...
The transition state regulator AbrB functions as an activator, a repressor, and a preventer of gene ...
The Bacillus subtilis AbrB protein is a DNA-binding global regulator of a plethora of functions that...
AbstractThe AbrB protein of B. subtilis represses the transcription of various postexponentially exp...
SummaryThe AbrB protein from Bacillus subtilis is a DNA-binding global regulator controlling the ons...
Genetic competence is a differentiation process initiated by Bacillus subtilis as a result of nutrit...
Bacillus subtilis is the model organism for low GC Gram-positive bacteria and is of great biotechnol...
<div><p>The global transition state regulator AbrB controls more than 100 genes of the <i>Bacillus</...
Bacillus subtilis is a ubiquitous soil bacterium that forms biofilms in a process that is negatively...
The lutR gene, encoding a product resembling a GntR-family transcriptional regulator, has previously...
Bacillus subtilis is the model organism for low GC Gram-positive bacteria and is of great biotechnol...
SummaryUnderstanding the DNA recognition and binding by the AbrB-like family of transcriptional regu...
\ua9 2016, Croatian Society of Natural Sciences. All rights reserved.Background and purpose: Single-...
<p>Bacillus subtilis cells can adopt different life-styles in response to various environmental cues...